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Global Change Biology(3)
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An international network to monitor the structure, composition and dynamics of Amazonian forests (RAINFOR)
ArticleAbstract: The Amazon basin is likely to be increasingly affected by environmental changes: higher temperaturesPalabras claves:AMAZON, basal area, carbon, Climate, Long-term monitoring, Permanent plot, soil, Tropical ForestAutores:Arroyo L.P., Baker T.R., David A. Neill, de Almeida S.S., Frederiksen T., Grace J., Higuchi N., Killeen T.J., Laurance W.F., Leaño C., Lewis S.L., Lloyd J.J., Malhi Y., Meir P., Monteagudo A., Panfil S.N., Patino S., Phillips O.L., Pitman N.C.A., Quesada C.A., Renato Valencia, Rudas-Ll. A., Saleska S.R., Salomao R.P., Silva N., Silveira M., Sombroek W.G., Vargas P.N., Vasquez-Martínez R., Vieira I.C.G., Vinceti B., Wright J.Fuentes:scopusAmazon forest response to repeated droughts
ArticleAbstract: The Amazon Basin has experienced more variable climate over the last decade, with a severe and widesPalabras claves:carbon, Forest productivity, precipitation, Tree mortality, vegetation dynamics, Water deficitAutores:Alarcón A., Alvarez-Dávila E., Alvarez-Loayza P., Andrade A.S., Aragao L.E.O.C., Arroyo L.P., Aymard C. G.A., Baker T.R., Baraloto C., Barroso J.G., Bonal D., Brienen R.J.W., Chave J., da Silva W.C., David A. Neill, Domingues T.F., Fauset S., Feldpausch T.R., Gloor M., Groot N., Honorio E.N., Laurance S.G.W., Laurance W.F., Lewis S.L., Licona J.C., Lloyd J.J., López-González G., Malhi Y., Marimon B.S., Marimon-Junior B.H., Mendoza Bautista C., Monteagudo-Mendoza A., Moscoso V.C., Oliveira dos Santos C., Oliveira E.A., Pallqui Camacho N.C., Pardo-Molina G., Phillips O.L., Prieto A., Quesada C.A., Ramírez F., Ramirez-Angulo H., Réjou-Méchain M., Rudas A., Saiz G., Salomao R.P., Silva-Espejo J.E., Silveira M., Stropp J., Ter Steege H., Terborgh J.W., Thomas-Caesar R., Van Der Heijden G.M.F., Vasquez-Martínez R., Vilanova-Torre E., Vincent A. VosFuentes:scopusMethods to estimate aboveground wood productivity from long-term forest inventory plots
ArticleAbstract: Forest inventory plots are widely used to estimate biomass carbon storage and its change over time.Palabras claves:BIOMASS, carbon, Census interval, diameter, Recruitment, Tropical ForestAutores:Araujo-Murakami A., Arroyo L.P., Baker T.R., Brienen R.J.W., Chao K.J., David A. Neill, Erwin T.L., Feldpausch T.R., Keeling H.C., Killeen T.J., Lewis S.L., López-González G., Malhi Y., Monteagudo A., Parada Gutierrez G.A., Phillips O.L., Pitman N.C.A., Quesada C.A., Silveira M., Stropp J., Talbot J., Van Der Heijden G.M.F., Vanderwel M.C., Vargas P.N.Fuentes:scopusTropical forest wood production: A cross-continental comparison
ArticleAbstract: Summary: Tropical forest above-ground wood production (AGWP) varies substantially along environmentaPalabras claves:AMAZON, Asia, carbon, Dipterocarpaceae, Dynamics, growth, Plant-soil interactions, Productivity, soil nutrients, Tropical ForestAutores:Abu Salim K., Baker T.R., Banin L.F., Burslem D.F.R.P., Chao K.J., David A. Neill, Davies S.J., Keeling H.C., Lewis S.L., Lloyd J.J., López-González G., Monteagudo-Mendoza A., Nilus R., Phillips O.L., Pitman N.C.A., Quesada C.A., Tan S., Vasquez R.V.Fuentes:scopusVariation in stem mortality rates determines patterns of above-ground biomass in Amazonian forests: implications for dynamic global vegetation models
ArticleAbstract: Understanding the processes that determine above-ground biomass (AGB) in Amazonian forests is importPalabras claves:Allometry, carbon, dynamic global vegetation model, forest plots, Productivity, Tropical ForestAutores:Alvarez-Dávila E., Alves de Oliveira A., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Araujo-Murakami A., Arets E.J.M.M., Arroyo L.P., Aymard G.A.C., Baker T.R., Baraloto C., Barroso J.G., Bonal D., Boot R.G.A., Brienen R.J.W., Camargo J.L.C., Chave J., Christoffersen B.O., Ciais P., Cogollo Á., Cornejo Valverde F., David A. Neill, De Deurwaerder H.P.T., Do Amaral I.L., Fauset S., Feldpausch T.R., Ferreira L.V., Galbraith D.R., Gloor M., Guimberteau M., Higuchi N., Honorio E.N., Johnson M.O., Killeen T.J., Kruijt B., Laurance S.G.W., Laurance W.F., Licona J.C., Lola da Costa A.C., López-González G., Lovejoy T.E., Malhi Y., Marimon B., Marimon B.S., Matos D.C.L., Meir P., Mendoza C., Monteagudo A., Moorcroft P., Pardo G., Penã-Claros M., Phillips O.L., Pitman N.C.A., Poorter L., Prieto A., Quesada C.A., Ramirez-Angulo H., Rammig A., Roopsind A., Rudas A., Salomao R.P., Sampaio G., Silveira M., Stropp J., Ter Steege H., Terborgh J.W., Thomas R.S., Thonicke K., Toledo M., Torres-Lezama A., Van Der Heijden G.M.F., Vasquez R.V., Verbeeck H., Vieira I.C.G., Vilanova-Torre E., Vincent A. Vos, von Randow C., Zhang K.Fuentes:scopusWater table depth modulates productivity and biomass across Amazonian forests
ArticleAbstract: Aim: Water availability is the major driver of tropical forest structure and dynamics. Most researchPalabras claves:above-ground biomass, carbon, forest dynamics, Groundwater, seasonality, Tropical ecologyAutores:Almeida E.C., Alvarez-Dávila E., Andrade A.S., Anthony Di Fiore, Aragao L.E.O.C., Araujo-Murakami A., Arets E.J.M.M., Arevalo F.R., Arroyo L.P., Aymard C. G.A., Baisie M., Baker T.R., Bánki O.S., Barlow J., Barroso J.G., Berenguer E., Blanc L., Bonal D., Bongers F., Brown I.F., Burban B., Camacho N.P., Camargo J.L.C., Cardozo N.D., Coelho F., Comiskey J.A., da Silva W.C., David A. Neill, de Oliveira E.A., del Aguila-Pasquel J., Derroire G., Disney M., Do Amaral I.L., Dourdain A.K., Elias F., Emílio T., Espejo J.S., Fernández R.H., Ferreira J., Ferreira L.V., Galbraith D.R., Gamarra L.V., Graça P.M.L.A., Gutierrez A.P., Hase E., Hérault B., Higuchi N., Honorio E.N., Huamantupa-Chuquimaco I., Jimenez-Rojas E., Kalamandeen M., Lima A.J.N., Llampazo G.F., Loayza P.A., López-González G., Manzatto Â.G., María Cristina Peñuela Mora, Marimon B.H., Marimon B.S., Melgaço K., Mendoza A.M., Mendoza C., Morandi P.S., Muelbert A.E., Pardo G., Peacock J., Pitman N.C.A., Pontes-Lopes A., Poorter L., Prieto A., Quesada C.A., Ramirez-Angulo H., Réjou-Méchain M., Ribeiro I.O., Roopsind A., Rudas A., Ruschell A.R., Schietti J., Serrano J., Silva C.V.J., Silva N., Silveira J.M., Silveira M., Singh J., Sousa T.R., Stahl C., Stropp J., Talbot J., Ter Steege H., Terborgh J.W., Toledo M., Torres-Lezama A., Valverde F.C., Van Der Heijden G.M.F., van Ulft B., Vargas M.P.N., Vieira I.C.G., Vilanova-Torre E., Vincent A. Vos, Volkmer De Castilho C., Zwerts J.A.Fuentes:googlescopusThe above-ground coarse wood productivity of 104 Neotropical forest plots
ArticleAbstract: The net primary production of tropical forests and its partitioning between long-lived carbon poolsPalabras claves:amazonía, carbon, Coarse wood productivity, GPP, growth, NPP, soil fertility, Tropical forestsAutores:Alvarez-Dávila E., Anthony Di Fiore, Arroyo L.P., Baker T.R., Chave J., Czimczik C.I., David A. Neill, de Almeida S.S., Higuchi N., Killeen T.J., Laurance S.G.W., Laurance W.F., Lewis S.L., Lezama A.T., Lloyd J.J., Malhi Y., Martinez R.V., Monteagudo A., Montoya L.M.M., Patino S., Phillips O.L., Pitman N.C.A., Quesada C.A., Salomao R.P., Silva J.N.N., Terborgh J.W., Vargas P.N., Vinceti B.Fuentes:scopusThe regional variation of aboveground live biomass in old-growth Amazonian forests
ArticleAbstract: The biomass of tropical forests plays an important role in the global carbon cycle, both as a dynamiPalabras claves:amazonía, BIOMASS, carbon, soil fertility, Tropical forests, Wood densityAutores:Arroyo L.P., Baker T.R., Chave J., Cochrane T., David A. Neill, de Almeida S.S., Higuchi N., Killeen T.J., Laurance S.G.W., Laurance W.F., Lewis S.L., Lezama A.T., Malhi Y., Martinez R.V., Meir P., Monteagudo A., Phillips O.L., Pitman N.C.A., Quesada C.A., Salomao R.P., Silva J.N.N., Terborgh J.W., Vargas P.N., Vinceti B., Wood D., Wright J.Fuentes:scopus